EP2348920B1 - Kit de construction - Google Patents

Kit de construction Download PDF

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Publication number
EP2348920B1
EP2348920B1 EP09760148.8A EP09760148A EP2348920B1 EP 2348920 B1 EP2348920 B1 EP 2348920B1 EP 09760148 A EP09760148 A EP 09760148A EP 2348920 B1 EP2348920 B1 EP 2348920B1
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EP
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Prior art keywords
plates
plate
tension
another
thickness
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EP09760148.8A
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German (de)
English (en)
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EP2348920A1 (fr
Inventor
Susanne Gabriel
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Individual
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Individual
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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B47/00Cabinets, racks or shelf units, characterised by features related to dismountability or building-up from elements
    • A47B47/04Cabinets, racks or shelf units, characterised by features related to dismountability or building-up from elements made mainly of wood or plastics
    • A47B47/042Panels connected without frames
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B2220/00General furniture construction, e.g. fittings
    • A47B2220/09Furniture held together by tension cables
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B2230/00Furniture jointing; Furniture with such jointing
    • A47B2230/15Joining of sectional members by means of inner tensioning rods

Definitions

  • the invention relates to a modular system for creating primarily of all containers such as shelves, but also completely or partially closed elements such as cabinets, enclosures, etc., as well as the containers produced therefrom itself.
  • shelf systems are known in which, for example, the vertical side walls are formed continuously, and in between horizontal shelves of different lengths are suspended.
  • furniture fittings such as rotary connectors are known for custom furniture of course, with which dimensionally custom made plate-shaped vertical side panels and horizontal floors can connect at right angles to each other, for example by a screwed into the one element a projecting pin with thickened free end, which engages behind a groove in the wall of a cup-shaped rotary member, which is rotatably disposed near the outer edge in the other part and when turning due to changing wall thickness the thickened head and thus the first part draws and fixes.
  • the wall elements are braced against each other between the lid and base with the help of one around the entire outer circumference of the piece of furniture in a corresponding groove in the outside inserted and put under tension tensioning cable.
  • the tensioning device can bias not only plates at an angle to one another, but also mutually aligned plates against each other, this opens up the possibility of forming, from individual plates arranged in a row, a e.g. stable shelf of a shelf, or to produce a vertical wall of a shelf or a cabinet or housing. In the previously known systems, this was only possible if in the connection region between the two aligned plates therefrom a transversely projecting plate was present.
  • a plate is by no means to be understood as meaning only a continuous plate, but rather any element which has a substantially greater extent in its main plane than in its thickness.
  • Such a plate may well have breakthroughs, so be as a perforated plate as well as a grid of metal rods welded together.
  • the plate is a flat material, such as a wood or plastic plate to be.
  • the plate is preferably flat and / or rectangular.
  • the tensioning devices in the plates are preferably not only in the edge-side end regions of the plates, but extend over their entire length or width in the main plane of the plate, preferably not only over the length or width of the individual plate, but over the entire length of the plates arranged in alignment one behind the other, in order to press and stabilize the plates aligned one behind the other in the direction of alignment, if necessary also across the thickness of the adjoining plates at an angle.
  • Such a tensioning device may either be a tensioning cable or a tensioning rod which extends along the longitudinal direction or transverse direction of the plane of the plate, ie the desired tensioning direction, which is usually the alignment direction of the plates arranged one behind the other, either in the interior of the plates these direction extending bores lie or lying in the same direction, open to the outer surfaces of the plates grooves.
  • the holes or the bottom of the grooves are spaced from the center of the thickness of the plates, however, in addition also on the center of the plate thickness holes, in particular in the middle of the length or width of a plate may be present.
  • the eccentric lying the center plane holes are mainly used to create a succession of adjacent plates a horizontal stable floor, for which the tensioning device, ie in particular the tensioning cable or the tension rod, must be arranged below the center of the thickness of the plates to a bias vertically upward, and for this purpose the plates are inserted so that the corresponding holes are located below the center of the thickness.
  • the tensioning device comprises a tensioning cable
  • the tensioning device further includes at least one tensioning roller, on the circumference of which the end of the tensioning cable is placed, fixed and with the aid of which the tensioning cable can be tensioned in the longitudinal direction of the cable.
  • the tensioning cable can either be a cable that runs through in the longitudinal direction with a constant cross section, or else a tensioning cable which has thickenings at regular intervals, at which other parts of the tensioning device, for example a tensioning roller or an over-centering lever, can attack to tension the tensioning cable in its longitudinal direction.
  • the tensioning cable then extends in one piece over the entire length of the plates arranged one behind the other in alignment, optionally also over the thickness of the adjoining plates which are arranged transversely thereto.
  • this tension rod can - at least in its end-side end regions - be designed as a threaded rod with an inner and / or outer thread, so that by screwing or screwing a corresponding nut or screw this nut or screw on a corresponding Supporting counter surface, it may be the end face of the corresponding plate itself, through which the tension rod extends therethrough, or the side surface of an adjacent, transverse thereto plate adjacent to the longitudinally penetrated by the tension rod plate.
  • tie rods whose length is preferably consistent with the length or width of the plates which they are to penetrate, however can as well as the plates themselves and the corresponding tie rods in alignment arranged one behind the other and connected to each other by a suitable coupling element, which must be at least on train in the longitudinal direction as strong as the tension rod itself.
  • clamping device does not necessarily ensure the exact positioning of the meeting plates, preferably in addition to the clamping device positioning elements, for. B. Positionierzapfen used to position the plates against each other by these positioning pins engage in each case a part of its extension in one of the two adjacent plates form-fitting manner.
  • the plates may also have a tongue and groove configuration, in particular with a groove in one of the end faces of the plate, and a mating spring in the opposite end face.
  • the plates themselves may be a polygon, in particular a rectangle or a square, and be present in one or more sizes.
  • panels of equal length but different widths can be used to build shelves of varying depth, or panels of equal width and length may be included in the kit so as not to be tied to a single fixed pitch.
  • the length of the different plates is preferably each an integer multiple of the length of the shortest plate. In the simplest case, the kit only from plates of a single size, from which still containers of different dimensions can be produced.
  • the plates may have in their length or width extending holes or grooves only in length or width, or in both directions of the main plane, and also through the thickness of the plate extending therethrough through holes together with in longitudinal and / or Be present in the transverse direction extending grooves or holes or alone in separate plates, which have only the holes in the thickness direction.
  • the longitudinally and widthwise extending grooves or bores preferably extend at the same distance offset from the outer edge, but viewed in the thickness direction, the longitudinally extending grooves or holes at a different height level than those in the width direction.
  • the bores in the thickness direction can either be present at the point of intersection of the grooves or bores of the length direction and width direction or can be arranged offset therefrom.
  • the plates additionally have a bore extending in the main plane in the middle of their thickness, preferably both in the length direction and in the width direction, in each case only one and not a plurality of parallel such holes in each direction, ie in the middle of Width and running in the middle of the length, so that these two center holes in the interior of the plate also intersect.
  • central bores are used primarily for creating vertical walls of multiple plates, which generally do not require biasing to one side of the main plane, unless it is the outer wall of a shelf:
  • these center holes are used for receiving the tensioning device, for which only a single in the middle of the width, ie the depth direction of the resulting shelf, is sufficient.
  • shelves which are variable both in height and in width by juxtaposing plates in their plane, or even by a single plate in a plane.
  • rear walls and front walls - also openable front walls in the form of doors - can be attached to a shelf body, such z.
  • rear walls can sit on the frame-like circumferential repository body or placed in the cavity of this cream.
  • such containers can be used not only as a shelf, but in the field of furniture as a cabinet or chest and beyond - possibly in other sizes - made of such a kit and housing and other containers.
  • the front surface has a recess, which is then arranged in one of the plates as either annularly enclosed or preferably open towards a narrow side of the plates recess.
  • the holes or grooves running in the plane of the plate preferably extend beside the recess and past it, so that they can still extend over the entire length or width of a plate.
  • mounting fixtures in particular mounting holes, can be provided for hinges in the plates, doors or flaps can be made from the plates, which are pivotally mounted on the body.
  • Fig. 1 a and 1b show on the one hand a tall, slender and on the other hand a wide, low shelf without back wall, which are each composed of the same plates 1:
  • the two shelves differ from the number of plates 1 "', by the high shelf of the Fig. 1a four plates 1 '"one above the other vertically arranged to form a side wall, in the low shelf of the Fig. 1b on the other hand, only two such plates 1 "'arranged one above the other form a side wall.
  • Fig. 1 a and 1 b are optionally the same size plates used as shelves and side walls, but possibly with respect to their holes or grooves different plates.
  • Figure 1c a tall slim shelf analogous to FIG. 1a , which in addition to the shelf according to FIG. 1 a rear-mounted rear wall, which consists of supplementary plates 1 *, which have by the thickness of the side walls 1 '"greater width than the plates used in the shelves 1 and a height equal to the height of the side plates 1'' equivalent.
  • Figure 1d shows a container which over the wide low shelf without rear wall according to FIG. 1b
  • a completely closed rear wall has as well as a partially closed front, which of course can be completely closed in practice.
  • the plates 1 * are as wide as the plates 1, from which the horizontal shelves are formed.
  • the drawn as a front panel 1 * which closes only 1/3 of the front, additionally has a recess 29, as they may be necessary just when using a container as a housing.
  • the recess 29 is open towards one of the outer edges of the plate 1 * and the holes 6 arranged in this plate 1 * running in the plane of the plate run alongside the recess 29.
  • Fig. 3 shows, for the realization of a functioning building block mostly both in the longitudinal direction 10 extending holes 6 and grooves 7 are necessary, as well as thickness holes 16, which is determined by the thickness of the plate 1, ie extend transversely to the lying in the main plane of the plate 1 center plane 15 therethrough as through holes.
  • the holes 6 and grooves 7 are each set back from the end faces 1 c of the plate 1 by the same value towards the center.
  • Fig. 1 a and b are therefore considered exactly constructed from the same size plates, however, which are provided with different recesses:
  • the vertical plates are then only on each other, but can also be biased against each other.
  • Fig. 2 to 6 show - partly in cross-sectional views - different clamping devices 3, to connect adjacent plates 1 both in alignment with each other and at an angle to each other:
  • a first tensioning device 3 which comprises a tensioning rod 5 which is composed of a plurality of rod sections 5a, 5b, as well as the horizontal shelf is composed of a plurality of plates 1, which adjoin each other horizontally in alignment.
  • a vertically standing plate 1 which serves as a side wall, for example, a shelf and with which the shelf should be firmly connected.
  • a clamping rod 5 by the in the longitudinal direction 10 of the plates 1 extending through holes 6 and also as clamping element through the adjacent, aligned and preferably the same thickness thick hole 16 inserted in the vertical plate and then from the outer sides of the side walls of the shelf, of which Fig. 2c two superimposed are visible, stretched in the longitudinal direction by supporting on these outer surfaces.
  • the stacked plates 1 can not slip against each other, as they are secured by positioning pins 30 between these plates 1, which protrude up and down into corresponding recesses of the end faces of these plates.
  • the individual rod sections are connected to each other, for example screwed together.
  • the rod sections at their front ends in each case in the longitudinal direction extending blind holes threaded holes 18, so that a grub screw 19 each half in the two adjacent rod sections 5a, b screwed these firmly together in the longitudinal direction.
  • the thickness of the vertical plate 1 is overcome by means of a correspondingly long clamping screw 12, which is inserted from the outside of the vertical plate and inserted into the threaded bore 18 at the end of the tie rod 5 and screwed is supported, and with a widened edge of her head on the outer surface of the sidewall thereby supports.
  • the tensioning element in this case the tensioning rod 6, thus extends here over the entire horizontal length of the shelf and additionally the thickness of the two adjacent side walls.
  • the clamping element In this case the tension rod 5, extend over several consecutively aligned shelves and more than two vertical side walls away in the horizontal direction, as in Figure 2d represented, wherein in addition to bridging the thickness of the intermediate wall by a corresponding longer grub screw 19 'and optionally, this surrounding, serving as a positioning device 2 positioning sleeve 22' or eccentric bush 21 in the transverse direction of the grub screw 19 'is held.
  • a major problem with the horizontally aligned shelves 1 is the stability under load from above by placing objects, such as books:
  • clamping element such as the tension rod 5
  • the clamping element is inserted into bores below the center plane 15 of the horizontally arranged plates 1, as in Fig. 2 located.
  • the bore 6 has a larger diameter than the clamping rod 5, and by an eccentric bushing 21 - as in the cross section of Fig. 2b shown - the clamping rod 5 presses against the upper cross-sectional area of the bore 18, wherein the eccentric bushing 21 is provided approximately U-shaped with a groove in a radial direction, in which the clamping rod 5 fits. If such an eccentric bush 21 in addition to each Half inserted into the holes 6 of the adjacent plates 1 and has an outer periphery corresponding to the inner circumference of these holes 6, such eccentric bushing 21 serves as a positioning pin between two adjacent plates simultaneously.
  • a positioning sleeve 22 having a central passage opening for the end of the tie rod 5 on the one hand and the threaded pin 12a of the clamping screw 12 on the other hand and in the final state partly in the last horizontal plate 1 and partly in the vertical plate 1 is. Is mounted by inserting the clamping screw 12 from the outside of the vertical plate 1 ago and forward sliding into the horizontal plate 1 in, preferably by means of the clamping screw 12th
  • Fig. 4 shows a second clamping device 3 in a representation analogous to Fig. 2 , which differs in that a tensioning cable 4 'is used as the tensioning element instead of the tensioning rod, are arranged on the preferably regular intervals thickenings 9, for example, small balls, which in the longitudinal direction tensile strength with the tensioning cable 4' are connected, and in which Other parts of the clamping device 3 can attack to tension the tension cable 4 'in the longitudinal direction 10.
  • the introduced from the outside of the vertical shelf wall clamping screw 12 ' has a bush-shaped base body 23 which fits into the thickness hole 16 exactly, and has a central internal thread, in which an expansion screw 24 is screwed, which is with its widened flange the outside of the vertical plate 1 is supported.
  • the expansion screw 24 has a conical tip, which sits on the forwardly screwing the expansion screw 24 into the main body 23 between the rear ends of retaining claws 25 and this apart when forward screwing the expansion screw 24 in the main body 23 apart, wherein the base body 23 by a Drivenutvertechnikung or the like on the outer circumference in a turning in the thickness hole 16 is prevented.
  • the retaining claws 25, two or more of which are arranged distributed over the circumference in the inner surfaces of the sleeve-shaped base body 23 are bent and mounted in its central region about a transverse axis to the longitudinal direction 10 pivot axis 26 so that with increasing pressing of their rear ends of the front ends 26a a positioned in the gripping region of the retaining claws 25 thickening 9 engage and when applied to the thickening 9 of the main body 23 further axially in the direction of expansion screw 24 together with the tensioning cable 4 'is pulled.
  • the Fig. 5 and 6 show a tensioning device, are used in the tensioning cables 4 without regularly arranged thickening in the central region.
  • This tensioning cable 4 has only at one end a thickening 9, which can not be pulled through the hole 6, in which the tensioning cable 4 is located.
  • tensioning rollers 13 are used, which are inserted in this case in one of the extending in the direction of the main plane of the plate outer surfaces 1 a or b of the plates 1 in appropriately sized cup holes 14, as in Fig. 5a shown.
  • the tensioning device and its operation will be described, wherein the tensioning cable is guided in not belonging to the invention grooves.
  • each of the longitudinal direction 10 for example, extending groove 7 near the end portions of the plate 1 depending on a pot bore 14 which is penetrated by the groove 7 and preferably deeper than the groove 7 so that a lying in the groove 7 tensioning cable 4 is about in the middle of the thickness of the inserted into the pot bore 14 tension roller 13 - which is located in the farthest of the end thickening 9 pot bore - can be wound.
  • the free end of the tensioning cable 4 - whose length is cut by cutting at the free end according to the desired length of the product to be produced, for example. Shelf is prepared - fixed on the winding circumference 27 of the tension roller 13 and then the tension roller 13 is rotated in the winding direction of the tensioning cable 4 and thus the tensioning cable 4 is increasingly stretched in the longitudinal direction 10. Since the tensioning cable 4 extends through all the plates 1 arranged in alignment with one another, these plates 1 are thereby pressed against one another in the longitudinal direction 10.
  • the tension roller 13 is prevented from turning back, for example, by pawls on its outer circumference arranged teeth 28, the flanks of which extend approximately parallel to the outer circumference in the winding, in the unwinding almost radially, and thereby dig into the inner circumference of the pot bore 14.
  • Fig. 5b shows the plates 1 are prepared to produce a shelf so that the grooves 7 are in its lower side and the lower half of the thickness to cause by means of the tensioned tensioning cable 4, the desired bias of the plates 1 upwards.
  • Fig. 6 a solution in views analogous to the Fig. 2 shown, in which the tensioning cable 4 extends through the subsequent transverse, usually vertical plate 1 in the form of a side wall and also this biases from the outside against the horizontal, used as a shelf plates 1:
  • a tensioning roller 13 ' In its central inner opening a tensioning roller 13 'can be inserted and rotatably mounted on the winding circumference 27' turn the free end of the tensioning cable 4 and wound and thereby in the longitudinal direction 10 of the tensioning cable 4 can be tensioned. Again, the tension roller 13 'secured by suitable devices on turning back in the unwinding. In order to allow the tensioning cable 4 to emerge from the latter in the direction of the horizontal plates 1 in the thickness bore, a corresponding through-hole may be present in the lower region of the base body 23.
  • the tensioning cable 4 is not necessarily a thickening 9 'must be, but instead the tensioning cable 4 may have two free ends, each wound on an analog tensioning roller or clamping screw and thus in the longitudinal direction is tensionable.
  • a rear wall can be made, and if necessary, a front flap or door, made according to the same principle of operation of individual plates and then-fixed at the rear wall, at a door or flap hinges - Connected to the existing body.

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  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Wood Science & Technology (AREA)
  • Assembled Shelves (AREA)

Claims (13)

  1. Boîte de construction pour la construction de réceptacles, tels que des rayonnages, des armoires, des boîtiers, dans laquelle au moins une paroi ou un fond est constitué(e) de plusieurs plaques (1, 1',...) disposées dans l'alignement l'une derrière l'autre dans le même plan, comprenant :
    - au moins une dimension de plaques (1, 1', 1", 1"') pour utilisation, par exemple, comme paroi, fond ou porte,
    - des dispositifs de positionnement (2) pour fixer les plaques (1) dans l'alignement ou selon un angle mutuel et
    - des dispositifs de serrage (3) sous la forme d'un câble tendeur (4) ou d'une tige de serrage (5) pour pré-contraindre l'une contre l'autre des plaques (1) qui ne s'appuient pas sur les points de contact, s'alignent l'une sur l'autre et se raccordent l'une à l'autre même au niveau de leur plan principal,
    caractérisée en ce que
    les plaques (1) présentent des perçages (6) s'étendant dans la direction longitudinale (10) et/ou dans la direction transversale (11) du plan principal de la plaque (1) et ménagés en dehors du centre de l'épaisseur des plaques, lesquels perçages sont conformés en perçages traversants et débouchent dans les faces frontales des plaques.
  2. Boîte de construction selon la revendication 1,
    caractérisée en ce que
    les dispositifs de serrage (3) s'étendent dans au moins une direction du plan principal des plaques (1) sur toute leur longueur et, en particulier, les dispositifs de serrage (3) s'étendent sur la totalité des plaques (1, 1', 1 ", 1"') aménagées dans l'alignement l'une derrière l'autre, éventuellement y compris les plaques transversales (1, 1', 1 ", 1"') aménagées entre elles.
  3. Boîte de construction selon l'une quelconque des revendications précédentes,
    caractérisée en ce que
    les plaques présentent des perçages (16) également dans le sens de l'épaisseur des plaques (1), c'est-à-dire transversalement à leur plan principal, en particulier dans un intervalle tel qu'ils s'alignent sur les perçages (6) - s'étendant dans le plan principal d'une plaque - de plaques (1) appliquées à angle droit sur leur bord extérieur.
  4. Boîte de construction selon l'une quelconque des revendications précédentes,
    caractérisée en ce que,
    pour produire des fonds horizontaux formés de plusieurs plaques (1) qui se raccordent l'une à l'autre et ne s'appuient pas sur les points de contact, on utilise les plaques (1) avec des perçages (6) s'étendant en dessous du centre de l'épaisseur pour recevoir les câbles tendeurs (4) ou les tiges de serrage (5).
  5. Boîte de construction selon l'une quelconque des revendications précédentes,
    caractérisée en ce que
    - le dispositif de serrage (3) présente pour le serrage du câble tendeur (4) un galet tendeur (8) qui est monté en particulier dans la plaque (1) et/ou
    - le câble tendeur (4) présente à intervalles réguliers des surépaisseurs et le dispositif de serrage (3) présente un levier de point mort haut pour accrocher les surépaisseurs (9) comme tendeur pour le câble tendeur, qui s'appuie en particulier dans une surface frontale (1 c) de la plaque (1).
  6. Boîte de construction selon l'une quelconque des revendications précédentes,
    caractérisée en ce que
    - la tige de serrage (5) est une tige filetée qui s'appuie par des écrous vissés ou par la tête d'une vis de serrage (12) sur les surfaces frontales des plaques, en particulier dans un trou borgne et/ou
    - les tiges de serrage (5) possèdent la longueur ou la largeur des plaques (1) et peuvent être prolongées en fonction du nombre de plaques (1) placées l'une derrière l'autre dans l'alignement, par exemple via un élément de couplage.
  7. Boîte de construction selon l'une quelconque des revendications précédentes,
    caractérisée en ce que
    - une dimension de la plaque (1) en particulier plane et/ou rectangulaire est carrée et d'autres dimensions des plaques (1) dans la direction longitudinale et/ou dans la direction transversale des plaques (1) mesure(nt) respectivement le multiple entier de la longueur de la plaque la plus petite, et/ou
    - en plus, il est prévu des plaques (1*) de grandeur complémentaire aux plaques (1) qui sont plus grandes ou plus petites de l'épaisseur des plaques (1) dans la direction longitudinale et/ou la direction transversale pour servir en particulier de parois arrière ou de parois frontales accrochées ou insérées.
  8. Boîte de construction selon l'une quelconque des revendications précédentes,
    caractérisée en ce que
    les plaques (1) ne sont pas des plaques plates fermées, mais des éléments de grille, en particulier en métal, notamment avec des tubes comme barreaux de grille.
  9. Boîte de construction selon l'une quelconque des revendications précédentes,
    caractérisée en ce que
    la boîte de construction comprend des éléments de positionnement, en particulier des douilles de positionnement (22) pour insérer dans les perçages (6) débouchant l'un dans l'autre dans l'alignement de plaques (1) aménagées en particulier selon un angle mutuel.
  10. Boîte de construction selon l'une quelconque des revendications précédentes,
    caractérisée en ce que
    les perçages (6) non ménagés sur le plan central (15) sont situés symétriquement par rapport au centre de la longueur de la plaque des deux côtés et un perçage (6) est ménagé sur le plan central (15) de l'épaisseur de la plaque (1) en particulier au centre de la longueur de la plaque (1).
  11. Boîte de construction selon l'une quelconque des revendications précédentes,
    caractérisée en ce que
    les plaques (1, 1', ..., (1*) présentent dans leur plan principal un évidement (29) en particulier ouvert vers un côté étroit et les perçages (6) s'étendent en particulier à côté de l'évidement (29).
  12. Boîte de construction selon l'une quelconque des revendications précédentes,
    caractérisée en ce que
    les plaques (1, 1', ..., (1*) présentent des dispositifs récepteurs, en particulier des perçages récepteurs pour des charnières destinées à articuler des plaques (1) attenant l'une à l'autre.
  13. Procédé de construction d'un réceptacle à partir de la boîte de construction selon la revendication 1, dans lequel au moins un fond est constitué de plusieurs plaques alignées l'une derrière l'autre dans le même plan et serrées l'une contre l'autre au moyen au moins d'un dispositif de serrage,
    caractérisé en ce que,
    pour construire des fonds horizontaux à partir de plaques (1) qui se raccordent l'une à l'autre et ne s'appuient pas sur les points de contact, on utilise des perçages (6) s'étendant an dessous du centre de leur épaisseur pour recevoir les câbles tendeurs (4) ou les tiges de serrage (5).
EP09760148.8A 2008-11-26 2009-11-26 Kit de construction Active EP2348920B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE200810058903 DE102008058903A1 (de) 2008-11-26 2008-11-26 Dreidimensionales Verbundsystem
PCT/EP2009/065873 WO2010060947A1 (fr) 2008-11-26 2009-11-26 Système assemblé tridimensionnel

Publications (2)

Publication Number Publication Date
EP2348920A1 EP2348920A1 (fr) 2011-08-03
EP2348920B1 true EP2348920B1 (fr) 2014-07-30

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EP09760148.8A Active EP2348920B1 (fr) 2008-11-26 2009-11-26 Kit de construction

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EP (1) EP2348920B1 (fr)
DE (1) DE102008058903A1 (fr)
WO (1) WO2010060947A1 (fr)

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FR2968524B1 (fr) * 2010-12-09 2013-01-18 Dupre Patrick Yves Meuble constitue d'un ensemble d'etageres modulables
DE202013102700U1 (de) * 2013-06-21 2013-07-01 RWK Einbauküchen R & W Kuhlmann GmbH Schrankmöbel
DE202017104115U1 (de) * 2017-07-11 2017-09-05 Reinhard Simon Einfassung zum Aufnehmen von Erd- und/oder Kompostmaterial
DE102022109805B4 (de) 2022-04-22 2024-01-25 zeroseven design studios GmbH Modulares Möbelsystem

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DE102007005046A1 (de) * 2006-01-31 2007-08-02 Konrad Merkt Gmbh Verbindungsvorrichtung für Möbelplatten
EP2100537A1 (fr) 2008-03-10 2009-09-16 Peter Gyger Agencement modulaire, notamment pour la subdivision d'un tiroir
DE202008004497U1 (de) * 2008-04-02 2008-07-17 Köhler, Andreas, Dipl.-Architekt Flexibles Möbel-Baukastensystem

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DE102008058903A1 (de) 2010-05-27
EP2348920A1 (fr) 2011-08-03

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